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Solution-Processed Metal Nanowire Mesh Transparent Electrodes

Nano Letters · 2008 · Vol. 8(2) · pp. 689–692
Jung‐Yong LeeStephen T. ConnorYi CuiPeter Peumans

Abstract

Transparent conductive electrodes are important components of thin-film solar cells, light-emitting diodes, and many display technologies. Doped metal oxides are commonly used, but their optical transparency is limited for films with a low sheet resistance. Furthermore, they are prone to cracking when deposited on flexible substrates, are costly, and require a high-temperature step for the best performance. We demonstrate solution-processed transparent electrodes consisting of random meshes of metal nanowires that exhibit an optical transparency equivalent to or better than that of metal-oxide thin films for the same sheet resistance. Organic solar cells deposited on these electrodes show a performance equivalent to that of devices based on a conventional metal-oxide transparent electrode.

Organic Electronics and PhotovoltaicsThin-Film Transistor TechnologiesNanowire Synthesis and ApplicationsMaterials scienceSheet resistanceElectrodeTransparent conducting filmOptoelectronicsTransparency (behavior)NanowireOLEDOxideThin film

MeSH terms

Computer SimulationCrystallizationElectric ConductivityElectric WiringEquipment DesignMaterials TestingMetalsMicroelectrodesModels, ChemicalMolecular ConformationParticle SizeSolutionsSurface PropertiesComputer-Aided DesignEquipment Failure Analysis
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References
Two-layer organic photovoltaic cell
Applied Physics Letters · 1986 · 4,920 citations
Transparent carbon nanotube coatings
Applied Surface Science · 2005 · 404 citations
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